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Laguerre-polynomial-weighted squeezed vacuum: generation and its properties of entanglement

机译:Laguerre-多项式加权挤压真空:生成及其纠缠性能

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摘要

We theoretically prepare a kind of two-mode entangled non-Gaussian state generated by combining quantum catalysis and parametric-down amplifier operated on the two-mode squeezing vacuum state. We then investigate the entanglement properties by examining Von Neumann entropy, EPR correlation, squeezing effect and the fidelity of teleportation. It is shown that only Von Neumann entropy can be enhanced by both single-and two-mode catalysis in a small squeezing region, while the other properties can be enhanced only by two-mode catalysis including symmetrical and asymmetrical cases. A comparison among these properties shows that the squeezing and the EPR correlation definitely lead to the improvement of both the entanglement and the fidelity, and the region of enhanced fidelity can be seen as a sub-region of the enhanced entanglement which indicates that the entanglement is not always beneficial for the fidelity. In addition, the effect of photon-loss after catalysis on the fidelity is considered and the symmetrical two-photon catalysis may present better behavior than the symmetrical single-photon case against the decoherence in a certain region.
机译:理论上,通过组合在双模挤压真空状态上操作的量子催化和参数向下放大器组合在两模上的循环和参数上放大器产生的一种双模缠绕的非高斯状态。然后,我们通过检查von neumann熵,epr相关,挤压效应和传送的保真度来调查纠缠属性。结果表明,只有在小挤压区域中的单模催化,只能通过包括对称和不对称情况的两模催化来增强von neumann熵。这些属性之间的比较表明,挤压和EPR相关性肯定会导致纠缠和保真度的改善,并且增强的保真度可以被视为增强缠结的子区域,这表明纠缠是纠缠的并不总是有益于保真度。此外,考虑了催化催化剂后的光子损失的效果,并且对称的双光子催化可能比对称单光子壳体呈现更好的行为,而是抵抗某个区域的粘膜。

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